Wieraszko Andrzej, Ahmed Zaghloul
Department of Biology, The College of Staten Island/City University of New York, 2800 Victory Boulevard, Staten Island, NY 10314, USA.
Department of Physical Therapy, The College of Staten Island/City University of New York, 2800 Victory Boulevard, Staten Island, NY 10314, USA.
Neural Plast. 2016;2016:2823735. doi: 10.1155/2016/2823735. Epub 2016 Dec 15.
The influence of direct current (DC) stimulation on radioactive calcium trafficking in sciatic nerve in vivo and in vitro, spinal cord, and synaptosomes was investigated. The exposure to DC enhanced calcium redistribution in all of these preparations. The effect was dependent on the strength of the stimulation and extended beyond the phase of exposure to DC. The DC-induced increase in calcium sequestration by synaptosomes was significantly reduced by cobalt and rupture of synaptosomes by osmotic shock. Although both anodal and cathodal currents were effective, the experiments with two electrodes of different areas revealed that cathodal stimulation exerted stronger effect. The exposure to DC induced not only relocation but also redistribution of calcium within segments of the sciatic nerve. Enzymatic removal of sialic acid by preincubation of synaptosomes with neuroaminidase, or carrying out the experiments in sodium-free environment, amplified DC-induced calcium accumulation.
研究了直流电(DC)刺激对体内和体外坐骨神经、脊髓及突触体中放射性钙转运的影响。暴露于直流电会增强所有这些标本中的钙再分布。该效应取决于刺激强度,且在暴露于直流电阶段之后仍会持续。钴可显著降低直流电诱导的突触体钙摄取增加,渗透压休克导致的突触体破裂也有此作用。尽管阳极电流和阴极电流均有效,但不同面积的两个电极实验表明,阴极刺激的效果更强。暴露于直流电不仅会导致坐骨神经节段内钙的重新定位,还会引起其再分布。通过用神经氨酸酶预孵育突触体来酶解去除唾液酸,或在无钠环境中进行实验,会增强直流电诱导的钙积累。